Thermoacoustic parametric instability of premixed ammonia flames propagating downwards in an open-closed tube

IF 6.7 1区 工程技术 Q2 ENERGY & FUELS Fuel Pub Date : 2024-06-29 DOI:10.1016/j.fuel.2024.132344
Jerric R. Delfin , Feng Guo , Nozomu Hashimoto , Osamu Fujita
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Abstract

This work investigates the self-excited thermoacoustic parametric instability of downward propagating laminar premixed ammonia flames in an open-closed combustion tube. NH3/O2/N2 flames were propagated at different laminar burning velocities at equivalence ratios of ɸ = 0.8 and ɸ = 1.2. Different unstable flame regimes were observed through pressure fluctuation measurements and synchronized high-speed imaging capturing the lateral and longitudinal perspectives of flame propagation. The observed propagation speed of quasi-planar flames showed a strong correlation with the calculated laminar burning velocities of NH3/O2/N2 mixtures. For the first time, the cellular structures of laminar premixed ammonia flames at the onset of parametric instability were clearly observed from the present experimental approach. The experimental cellular flame wavenumbers and acoustic velocity fluctuation amplitudes at the onset of parametric instability are in qualitative agreement with the theory of stability of laminar flames under acoustic excitation. Experiments have shown that NH3/O2/N2 flames are more unstable than CH4/O2/N2 flames at the same laminar burning velocity independent of Lewis number within the range of tested conditions. The influence of activation energy on parametric instability is investigated through a comparative thermoacoustic analysis between two different fuels at varied equivalence ratios. Ammonia flames are characterized by large overall activation energy and Zeldovich numbers compared to hydrocarbon flames. This work elucidates how this unique property characterizes the acoustic instability of downward propagating premixed ammonia flames in a tube based on classical theories on acoustic instability of laminar premixed flames.

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开闭管中向下传播的预混氨火焰的热声参数不稳定性
本研究探讨了在开放式封闭燃烧管中向下传播的层状预混合氨火焰的自激热声参数不稳定性。NH3/O2/N2 火焰以不同的层燃速度传播,等效比分别为 ɸ = 0.8 和 ɸ = 1.2。通过压力波动测量和同步高速成像捕捉火焰传播的横向和纵向视角,观察到了不同的不稳定火焰状态。观察到的准平面火焰传播速度与计算得出的 NH3/O2/N2 混合物层流燃烧速度有很强的相关性。通过本实验方法,首次清晰地观察到了参数不稳定性开始时层状预混合氨火焰的蜂窝结构。参数不稳定性开始时的实验蜂窝状火焰波数和声速波动振幅与声激励下层流火焰稳定性理论基本一致。实验表明,在测试条件范围内,在相同层燃速度下,NH3/O2/N2 火焰比 CH4/O2/N2 火焰更不稳定,与路易斯数无关。通过对不同当量比的两种不同燃料进行热声比较分析,研究了活化能对参数不稳定性的影响。与碳氢化合物火焰相比,氨火焰的整体活化能和泽尔多维奇数较大。这项研究基于层流预混合火焰声学不稳定性的经典理论,阐明了这一独特特性如何描述管内向下传播的预混合氨火焰的声学不稳定性。
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来源期刊
Fuel
Fuel 工程技术-工程:化工
CiteScore
12.80
自引率
20.30%
发文量
3506
审稿时长
64 days
期刊介绍: The exploration of energy sources remains a critical matter of study. For the past nine decades, fuel has consistently held the forefront in primary research efforts within the field of energy science. This area of investigation encompasses a wide range of subjects, with a particular emphasis on emerging concerns like environmental factors and pollution.
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